IP Library › Granted Patent US 9,072,890
Granted Patent B2
US 9,072,890 · App. 13/393,521 · Granted Jul 7, 2015

Pacing, sensing or defibrillator leads for implantation into the myocardium

Inventors: Paul A. Friedman (Rochester, MN); Charles J. Bruce (Rochester, MN); Samuel J. Asirvatham (Rochester, MN)
Assignee: MAYO FOUNDATION FOR MEDICAL EDUCATION AND RESEARCH
A61N1/0565A61N1/0573
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Quick Facts
Patent No.
US 9,072,890
App. No.
13/393,521
Granted
Jul 7, 2015
Kind
B2
Abstract

An electrical lead for a cardiac device includes a body having a distal end sized for insertion through a catheter, first and second electrodes extending through the body, with each electrode terminating in a tip having proximal and distal ends and arranged to extend to an area of cardiac tissue. The tips include a fully insulated portion on the proximal and distal ends measuring in a range between 5 percent and 40 percent of the lengths of the tips, and further include an uninsulated intermediate section. The tip of the second electrode includes a helical section surrounding the first electrode and has an insulated portion on an inwardly facing portion surface facing toward the first electrode. The tip of the second electrode also includes a fully insulated portion on the proximal and distal ends measuring in the same or similar percentage range.

Claims (19)

1. An electrical lead for a cardiac device, the electrical lead comprising:

a lead body having a proximal end and a distal end, the lead body sized for insertion through a lumen of a steerable catheter;

an anchor arranged to secure the distal end of the lead body adjacent an area of cardiac tissue;

a first electrode and a second electrode extending through the lead body, the first and second electrodes each terminating in a tip having a proximal end, a distal end, and an effective length, the tip of the first and second electrodes arranged to extend from the lead body for insertion into the area of cardiac tissue;

the tip of each of the first and second electrodes including a fully insulated portion on the proximal end, a fully insulated portion on the distal end, each of the fully insulated portions on both the proximal and distal ends having an insulated length measuring between 5 percent and 40 percent of an effective length of the tip, the tip of each of the first and second electrodes further including an intermediate section between the proximal and distal ends having a continuous uninsulated portion,

wherein the first electrode and the second electrode are electrically connected to a circuit that delivers opposite polarity to the first and second electrodes.

2. The electrical lead of claim 1 , wherein the anchor comprises a helical wire.

3. The electrical lead of claim 1 , wherein the anchor is fully insulated.

4. The electrical lead of claim 1 , wherein the tip of each of the first and second electrodes is linear.

5. The electrical lead of claim 2 , wherein the helical wire is fully insulated and exits the lead body generally along an axis of the lead body, and wherein the tip of each of the first and second electrodes is spaced away from the axis.

6. The electrical lead of claim 5 , wherein the tip of each of the first and second electrodes comprises a linear pin extending parallel to the axis.

7. The electrical lead of claim 5 , wherein the tip of each of the first and second electrodes is disposed at an angle relative to the axis.

8. The electrical lead of claim 7 , wherein the angle measures between 5 degrees and 60 degrees.

9. The electrical lead of claim 8 , wherein the angle measures 35 degrees.

10. The electrical lead of claim 1 , wherein the anchor is helical, and wherein the effective length of the tip of the first and second electrodes is less than the effective length of the tip of the anchor.

11. The electrical lead of claim 10 , wherein the effective length of the tip of the first and second electrodes is about 10% to 90% percent of the effective length of the anchor.

12. The electrical lead of claim 11 , wherein the effective length of the tip of the first and second electrodes is about 75 percent of the effective length of the anchor.

13. The electrical lead of claim 1 , wherein the insulated length on the proximal and distal ends of each of the tips measures about 15 percent of the effective length of each of the tips.

14. The electrical lead of claim 1 , wherein the intermediate section has no insulation.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2012
From: FRIEDMAN, PAUL A.; BRUCE, CHARLES J.; ASIRVATHAM, SAMUEL J.
To: MAYO FOUNDATION FOR MEDICAL EDUCATION AND RESEARCH
Reel/Frame 028367/0318 →
Continuity (2)
Provisional Application 61239640 · Sep 3, 2009
Related Publication 20120245665A1 · Sep 27, 2012